DDR2 alleviates retinal vaso-obliteration and pathological neovascularization by modulating microglia M1/M2 phenotypic polarization in a mouse model of proliferative retinopathy

IF 4.2 2区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Qinjin Dai , Wenqi Su , Zhongcheng Zhou , Jiaguo Yuan , Xinru Wei , Jin Su , Jie Zhu
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引用次数: 0

Abstract

Retinopathy of prematurity (ROP), a leading cause of blindness in premature infants, is characterized by retinal vaso-obliteration during hyperoxia and pathological neovascularization (NV) in relative hypoxia phase. Current treatments, which focus on the late stages of pathological neovascularization, are associated with numerous side effects. Studies demonstrated that discoidin domain receptor 2 (DDR2), a collagen-binding receptor tyrosine kinase, inhibits the experimental choroidal neovascularization and participates in tumor angiogenesis. However, the role of DDR2 in ROP and underlying mechanisms is unclear. In this study, we initially found that DDR2 expressed during mouse physiological retinal vascular development and significantly decreased in vaso-obliteration phase followed by increase during pathological neovascularization phase in mouse oxygen-induced retinopathy (OIR) model. Early upregulation of DDR2 before hyperoxia attenuates oxygen-induced vaso-obliteration, reduces pathological neovascularization, and promotes retinal vascular maturation. Additionally, DDR2 upregulation increased the number of microglia around retinal blood vessels and induced anti-inflammatory M2 polarization. Furthermore, the STAT6/TGF-β signaling pathway suppressed during hyperoxia was activated after DDR2 upregulation. In conclusion, DDR2 attenuated vaso-obliteration and inhibited pathological neovascularization by switching the microglia polarization from M1 to M2 phenotype via the STAT6/TGF-β signaling pathway in OIR. This suggests that DDR2 could be a novel target for the early treatment of ROP.

Abstract Image

在增生性视网膜病变小鼠模型中,DDR2通过调节小胶质细胞M1/M2表型极化减轻视网膜血管闭塞和病理性新生血管
早产儿视网膜病变(ROP)是导致早产儿失明的主要原因之一,其特点是在高氧期视网膜血管闭塞,在相对缺氧期出现病理性新生血管(NV)。目前的治疗主要集中在病理性新生血管的晚期,有许多副作用。研究表明,胶原结合受体酪氨酸激酶盘状蛋白结构域受体2 (DDR2)抑制实验性脉络膜新生血管并参与肿瘤血管生成。然而,DDR2在ROP中的作用及其潜在机制尚不清楚。在本研究中,我们初步发现,在小鼠氧诱导视网膜病变(OIR)模型中,DDR2在小鼠视网膜血管生理性发育期间表达,在血管闭塞期显著降低,在病理性新生血管期升高。在高氧之前早期上调DDR2可减弱氧诱导的血管闭塞,减少病理性新生血管,促进视网膜血管成熟。此外,DDR2上调可增加视网膜血管周围小胶质细胞数量,诱导抗炎M2极化。此外,高氧状态下被抑制的STAT6/TGF-β信号通路在DDR2上调后被激活。综上所述,DDR2通过在OIR中通过STAT6/TGF-β信号通路将小胶质细胞极化从M1表型转变为M2表型,从而减轻血管闭塞并抑制病理性新生血管。这表明DDR2可能是早期治疗ROP的新靶点。
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来源期刊
CiteScore
12.30
自引率
0.00%
发文量
218
审稿时长
32 days
期刊介绍: BBA Molecular Basis of Disease addresses the biochemistry and molecular genetics of disease processes and models of human disease. This journal covers aspects of aging, cancer, metabolic-, neurological-, and immunological-based disease. Manuscripts focused on using animal models to elucidate biochemical and mechanistic insight in each of these conditions, are particularly encouraged. Manuscripts should emphasize the underlying mechanisms of disease pathways and provide novel contributions to the understanding and/or treatment of these disorders. Highly descriptive and method development submissions may be declined without full review. The submission of uninvited reviews to BBA - Molecular Basis of Disease is strongly discouraged, and any such uninvited review should be accompanied by a coverletter outlining the compelling reasons why the review should be considered.
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